WO2010075717A1 - Procédé et dispositif pour commutation non synchronisée des utilisateurs en liaison montante et en liaison descendante - Google Patents

Procédé et dispositif pour commutation non synchronisée des utilisateurs en liaison montante et en liaison descendante Download PDF

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Publication number
WO2010075717A1
WO2010075717A1 PCT/CN2009/075211 CN2009075211W WO2010075717A1 WO 2010075717 A1 WO2010075717 A1 WO 2010075717A1 CN 2009075211 W CN2009075211 W CN 2009075211W WO 2010075717 A1 WO2010075717 A1 WO 2010075717A1
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WO
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Prior art keywords
user
cell
uplink
downlink
configuration
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PCT/CN2009/075211
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English (en)
Chinese (zh)
Inventor
于映辉
万蕾
Original Assignee
华为技术有限公司
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Publication date
Application filed by 华为技术有限公司 filed Critical 华为技术有限公司
Priority to EP09836004A priority Critical patent/EP2375809A4/fr
Publication of WO2010075717A1 publication Critical patent/WO2010075717A1/fr

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Classifications

    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W36/00Hand-off or reselection arrangements
    • H04W36/0005Control or signalling for completing the hand-off
    • H04W36/0083Determination of parameters used for hand-off, e.g. generation or modification of neighbour cell lists
    • H04W36/0085Hand-off measurements
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W36/00Hand-off or reselection arrangements
    • H04W36/24Reselection being triggered by specific parameters
    • H04W36/30Reselection being triggered by specific parameters by measured or perceived connection quality data
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W36/00Hand-off or reselection arrangements
    • H04W36/24Reselection being triggered by specific parameters
    • H04W36/30Reselection being triggered by specific parameters by measured or perceived connection quality data
    • H04W36/302Reselection being triggered by specific parameters by measured or perceived connection quality data due to low signal strength

Definitions

  • the present application claims Chinese patent application filed on December 31, 2008, the Chinese Patent Office, the application number is CN 200810189802.6, and the invention name is "user uplink and downlink asynchronous switching method and device" Priority is hereby incorporated by reference in its entirety.
  • the present invention relates to the field of communications, and in particular, to a method and apparatus for user uplink and downlink asynchronous switching.
  • LTE Long Term Evolution
  • CoMP Coordinatd Multi-Point Transmission and Reception
  • a user can send and receive data through multiple cells.
  • These cells can be distributed under the same network node, such as the same eNB (Evolution NodeB, evolved network node, ie, LTE base station). ), can also be distributed under different network nodes.
  • the user can independently maintain the uplink and downlink cells in the CoMP communication system. Since the user can independently maintain the uplink and downlink cells, sometimes the uplink cell of the user changes, and the downlink cell does not change, or the downlink cell of the user changes, and the uplink cell does not change.
  • Carrier aggregation means that users use multiple component carriers at the same time, and each component carrier can be used by one cell. In the scenario of carrier aggregation, the uplink and downlink component carriers do not change at the same time due to different uplink and downlink capabilities of the user.
  • the uplink and downlink asynchronous switching in the aggregation scenario.
  • the network side sends measurement control information (Measure Control) to the user to standardize the measurement behavior of the user and measure the reporting criteria.
  • the user measures the neighboring cell of the access cell and the measurement result meets the reporting criteria. It is reported to the network node in the form of a measurement report.
  • the measurement report includes the cell identifier that meets the reporting criteria.
  • the network node performs the user's uplink and downlink handover decision according to the measurement result reported by the user.
  • the user performs uplink and downlink handover, the user's uplink cell and downlink cell are simultaneously switched.
  • the inventors found that in the prior art: When the user performs the uplink and downlink handover, the user's uplink cell and the downlink cell are always converted at the same time. In some new applications, such as an aggregation scenario or a CoMP scenario, sometimes the user only changes the uplink cell or only The downlink cell changes, and the uplink and downlink signal levels of the user are not the same. Sometimes the uplink signal is poor, and sometimes the downlink signal is poor. If the uplink and downlink are simultaneously switched, the overall data performance will be degraded. In addition, if the uplink or downlink cell that does not perform data transmission is switched, the number of cells that the user needs to maintain is increased, thereby increasing the complexity of user and system maintenance.
  • the embodiment of the present invention provides a method and apparatus for user uplink and downlink asynchronous switching.
  • the technical solution is as follows:
  • a method for uplink and downlink asynchronous switching of a user comprising:
  • the uplink resource of the user is configured, and the uplink cell of the user is switched;
  • the downlink resource of the user is configured, and the downlink cell of the user is switched.
  • the embodiment of the present invention further provides a device for uplink and downlink asynchronous switching of a user, where the device includes: a receiving module, configured to receive a measurement report sent by a user;
  • a first switching module configured to switch, according to the measurement report received by the receiving module, when the uplink cell and the downlink cell of the user need to perform handover, and then switch the uplink cell of the user;
  • the second switching module is configured to switch, according to the measurement report received by the receiving module, when the downlink cell of the user needs to perform handover in the uplink cell and the downlink cell, and then switch the downlink cell of the user.
  • the resource when the user performs one-way switching in the uplink or the downlink, the resource is configured in one direction, and the uplink and downlink asynchronous switching of the user is implemented, which reduces the number of cells that the user needs to maintain, and reduces the number of users. And the complexity of system maintenance.
  • BRIEF DESCRIPTION OF THE DRAWINGS In order to more clearly illustrate the embodiments of the present invention or the technical solutions in the prior art, a brief description of the drawings used in the embodiments or the prior art description will be briefly described below. The drawings are only some of the embodiments of the present invention, and those skilled in the art can obtain other drawings based on these drawings without any inventive labor.
  • FIG. 1 is a flowchart of a method for uplink and downlink asynchronous switching of a user provided in Embodiment 1 of the present invention
  • FIG. 2 is a flowchart of a method for uplink and downlink asynchronous switching of a user provided in Embodiment 2 of the present invention
  • Embodiment 3 is a flowchart of a method for uplink and downlink asynchronous switching of a user provided in Embodiment 3 of the present invention
  • Embodiment 4 is a structural diagram of an apparatus for uplink and downlink asynchronous switching of a user provided in Embodiment 4 of the present invention.
  • DETAILED DESCRIPTION OF THE EMBODIMENTS In order to make the objects, technical solutions, and advantages of the present invention more comprehensible, the embodiments of the present invention will be further described in detail with reference to the accompanying drawings. It is apparent that the described embodiments are only a part of the embodiments of the invention, and not all of the embodiments. All other embodiments obtained by those skilled in the art based on the embodiments of the present invention without creative efforts are within the scope of the present invention.
  • Embodiment 1 In order to implement the uplink and downlink asynchronous switching of the user in the communication system, the embodiment of the present invention provides a method for user uplink and downlink asynchronous switching. Referring to FIG. 1, the method includes: 101: Receive a measurement report sent by a user.
  • the uplink resource of the user is configured, and the uplink cell of the user is switched. Specifically, when only the uplink cell needs to be switched, only the uplink resource configuration in the unidirectional direction is configured for the user, and the downlink resource configuration is maintained, so that the user can perform the handover of the uplink cell in one direction.
  • the downlink resource of the user is configured, and the downlink cell of the user is switched.
  • the embodiment of the present invention provides a method for uplink and downlink asynchronous switching of the user.
  • the user performs the uplink single-direction handover under the same network node as an example, that is, the user's uplink cell changes, and the downlink cell does not change, and the user uplink cell handover does not cross the network node.
  • the process of switching the uplink cell of the user is:
  • the user performs measurement on the serving cell and/or the cell adjacent to the serving cell, and obtains the identifier of the measured cell. And reporting the measurement report to the network node of the current service user, where the measurement report includes the cell identifier that satisfies the measurement condition.
  • the network node After receiving the measurement report, the network node determines, according to the measurement report, whether the uplink cell or the downlink cell of the user needs to perform handover; when determining that the uplink cell of the user needs to perform handover, the uplink of the user Resources are configured. Specifically, the network node configures the uplink resource of the user, and there are two methods.
  • One is: determining, according to the measurement report, the uplink configuration cell of the user; the uplink configuration cell, that is, the cell that the user needs to switch to, The uplink configuration cell configures an identifier for the user, and performs uplink radio resource configuration for the user.
  • the resource correspondence relationship of the uplink configuration cell of the user in the uplink radio resource configuration is updated according to the change of the uplink configuration cell of the user, that is, according to the configuration of the uplink configuration cell of the uplink handover.
  • the network node determines the uplink configuration cell of the user according to the measurement report; configures an identifier for the user on the uplink configuration cell, and performs uplink radio resource configuration for the user. .
  • the network node selects, according to the measurement report, an appropriate cell from the relevant uplink cell of the user as the uplink configuration cell of the user.
  • the network node can select the uplink configuration cell of the user from the cell reported by the user's measurement report according to the RRM (Radio Resource Management) algorithm according to the measurement report of the user.
  • RRM Radio Resource Management
  • the network node needs to send the information of the added link to the uplink configuration cell and the user.
  • the appropriate uplink configuration cell is selected, the user is configured with an identifier on the uplink configuration cell, and the uplink radio resource configuration is performed on the user.
  • configuring the identifier for the user may be: The user allocates the C-RNTI (the user identifier on the public transport channel), and may also be other user identifiers, such as identifying the unique identifier of the user in the access network.
  • the uplink radio resource configuration for the user may be: RB (Radio Bearer, wireless carrier) configuration.
  • the uplink RB configuration includes: ⁇ (network node identifier) user identifier; uplink EPS (Evolved Packet System) identifier; uplink radio bearer identifier; uplink PDCP (Packet Data Convergence Protocol) Configuration; uplink RLC (Radio Link Control) configuration; uplink logical channel configuration; uplink transport channel configuration; uplink physical channel configuration;
  • the radio resource configuration includes:
  • ⁇ cell scrambling information high-level identity of the cell; ⁇ downlink EPS bearer identifier; downlink radio bearer identifier; downlink PDCP configuration; Downlink RLC configuration; downlink logical channel configuration; downlink transport channel configuration; downlink physical channel configuration;
  • the uplink and downlink PDCP configurations include: the setting of the drop timer, whether the RLC status report is required, the setting of the clear timer, and the SN (Service Node) of the PDCP. Size, as well as header compression algorithms and more.
  • the uplink RLC configuration includes: poll related settings in AM (Affirm mode) mode, and
  • the downlink RLC configuration includes: reordering settings and status prohibition settings.
  • the uplink logical channel configuration includes: the priority of the logical channel, the priority bit rate, and the associated logical channel group.
  • the uplink and downlink transport channel configuration that is, the configuration of the MAC (Media Access Control) layer includes: configuration of persistent scheduling, maximum number of retransmissions, setting of periodic status reporting timer, etc., including DRX (Discontinous Reception, non- Continuous reception) settings, time series timer, and PHR (Power Headroom Report) settings.
  • the uplink physical channel configuration includes: PDSCH (Downlink Physical Channels) settings, PUCCH (Uplink Physical Channels) settings, uplink power control, antenna information, and scheduling request settings.
  • the downlink physical channel configuration includes: PDSCH setting, PUCCH setting, antenna information, and scheduling request setting.
  • the configuration of each resource remains unchanged. After the configuration of the radio resources is completed, the uplink switching of the user can be performed.
  • the resource correspondence relationship of the uplink configuration cell includes a correspondence between the uplink configuration cell and the user identifier of the user, where the user identifier is an identifier allocated by the uplink configuration cell to the user; in the uplink direction of the user,
  • the uplink configuration cell includes cell 1, cell 2, and cell 3.
  • the id (identification) assigned to the user in cell 1 is UE id1, the identity assigned by cell 2 to the user is UE id2, and the cell 3 is assigned to the user.
  • Updating the resource correspondence relationship of the uplink configuration cell is specifically: determining an uplink configuration cell of the user, obtaining a user identifier for the user on the uplink configuration cell, and updating the correspondence between the uplink cell and the identifier allocated for the user, for example, when When the user's uplink cell is handed over from cell 1 to cell 2, the identity assigned to the user on cell 2 is updated.
  • each relevant cell is equal at this time, and the configuration at the physical layer needs to indicate the used cell, so each cell needs to be configured with a user ID. See Table 1 for the resource correspondence table of the uplink configuration cell.
  • the physical channel distinguishes the identifier of the relevant cell, and the resource mapping table of the uplink configuration cell only needs to indicate the uplink anchor cell and the downlink anchor cell.
  • the user ID may not be configured.
  • For the resource correspondence table of the uplink configuration cell see Table 2.
  • the uplink resource of the user is configured as an anchor, and the uplink configuration cell of the user is a cell configured by the anchor point, the user identifier allocated to the user on the uplink configuration cell configured by the anchor point is acquired, and the anchor point is configured. The correspondence between the uplink configuration cell and the identifier assigned to the user is updated.
  • the uplink configuration cell of the user is not the cell configured by the anchor point, only the uplink configuration cell of the user needs to be updated in the table.
  • the network node After updating the resource correspondence relationship of the uplink configuration cell of the user, the network node can maintain the user according to the situation of the relevant cell used by the user and the list of uplink and downlink cells of the user. Up and down radio bearers.
  • the user accesses the uplink configuration cell by using a random access procedure according to the configuration of the network node, and after completing the uplink path update, sends a confirmation message of the completion of the handover to the network node, to notify the completion of the network node handover, and the network node After receiving the confirmation information, the uplink configuration cell is used as the user's new uplink cell. The user can then transfer data through the switched uplink cell. It is to be noted that, because the user's uplink cell changes, the network side needs to reconfigure the measurement control information for the user according to the characteristics of the new uplink cell, and the reconfigured measurement control information includes the measurement target and the measurement bandwidth.
  • the user When the user performs the uplink handover, the user needs to access the uplink configuration cell to obtain the uplink resource and the uplink synchronization. At this time, the downlink path of the user is not disconnected from the source network node, so the source cell and the uplink configuration cell can be obtained through the downlink path.
  • the downlink timing difference is calculated by using the downlink timing difference to adjust the transmission time by the uplink timing difference when the user sends the access information, and accessing the uplink configuration cell by using the random access method to establish the user.
  • the connection to the uplink configuration cell Correspondingly, when the user's downlink cell changes, and the uplink cell does not change, the user downlink cell handover does not cross the network node.
  • the downlink resource is configured for the user to implement the downlink switching of the user according to the measurement report of the user.
  • the specific method is similar to the method for performing the uplink single direction switching. I will not repeat them here.
  • the uplink handover is different in the access configuration of the cell.
  • the uplink of the user does not switch, that is, the uplink of the user and the network node does not exist. The user does not need to access the downlink configuration cell in a random access manner, and can directly access the downlink configuration cell and use the downlink handover completion information sent by the resource of the unchanged uplink cell.
  • the embodiment of the present invention when the user performs one-way switching in the uplink or the downlink, the resource is configured in one direction, and the uplink and downlink asynchronous switching of the user is implemented, which reduces the number of cells that the user needs to maintain, and reduces the number of users. And the complexity of system maintenance.
  • Embodiment 3 In order to implement the uplink and downlink asynchronous switching of the user in the communication system, the embodiment of the present invention provides a method for uplink and downlink asynchronous switching of the user.
  • An example of the uplink cell handover in a single direction is performed by using a cross-network node as an example, that is, the uplink cell of the user changes, and the downlink cell does not change, and the cell in which the handover occurs does not belong to the network node where the user is located, and the user crosses.
  • the network node performs handover of the uplink cell.
  • the process of switching the uplink cell of the user is:
  • the user performs measurement on the serving cell and/or the cell adjacent to the serving cell, and obtains the identifier of the measured cell.
  • the measurement report is reported to the source network node of the current service, and the measurement report includes the cell identifier that satisfies the measurement condition.
  • the source network node that is accessed by the user determines, according to the measurement report, whether the uplink cell or the downlink cell of the user needs to perform handover; when determining that the uplink cell of the user needs to perform handover, The user's uplink resources are configured.
  • the source network node configures the uplink resource of the user, and the method may be: the first method is: determining, according to the measurement report, an uplink configuration cell of the user; Configure the ID and configure the uplink radio resource for the user.
  • the second method is: updating the resource correspondence relationship of the uplink configuration cell of the user in the uplink radio resource configuration according to the change of the uplink configuration cell of the user.
  • the first method described above is similar to 202a.
  • the source network node selects a suitable uplink configuration cell
  • the uplink configuration cell of the user is determined according to the measurement report and the RRM algorithm; and the resource negotiation is performed with the network node where the uplink configuration cell is located.
  • the radio resource configuration is performed, the method is the same as the method for configuring the radio resource in 202a, and details are not described herein.
  • the second method is similar to 202b. The difference is that: when performing uplink switching of a user across a network node, the identifier of the network node needs to be added to the uplink resource of the user. For example, Table 3 and Table 4 are used to configure the cell for uplink.
  • the resource correspondence table the identifier of the network node is added to the table.
  • the cell list in the table is the uplink configuration of the user, and the list of the area.
  • the uplink network node identifier in the table is the identifier of the network node to which the uplink configuration cell of the user belongs.
  • each cell needs to be configured with a user ID. See Table 3 for the resource correspondence table of the cell.
  • Updating the resource correspondence relationship of the uplink configuration cell is specifically: determining an uplink configuration cell of the user, obtaining a user identifier for the user on the uplink configuration cell, and updating the correspondence between the uplink cell and the identifier allocated for the user, for example, when When the user's uplink cell is handed over from cell 1 to cell 2, the identity assigned to the user on cell 2 is updated.
  • the physical channel distinguishes the identifier of the related cell, and only the uplink anchor cell and the downlink anchor cell are required to be indicated in the resource correspondence table of the uplink configuration cell.
  • the other user-related cells may not be configured with the user ID.
  • For the resource correspondence table of the uplink configuration cell see Table 4.
  • the uplink resource of the user is configured as an anchor
  • the uplink configuration cell of the user is a cell configured by the anchor point
  • the user identifier allocated to the user on the uplink configuration cell configured by the anchor point is acquired, and the anchor point is configured.
  • the correspondence between the uplink configuration cell and the identifier assigned to the user is updated.
  • the uplink configuration cell of the user is not the cell configured by the anchor point, only the uplink configuration cell of the user needs to be updated in the table.
  • the network bearer can maintain the uplink and downlink radio bearers according to the situation of the relevant cell used by the user and the list of the uplink and downlink cells of the user.
  • the user accesses the uplink configuration cell by using a random access procedure according to the configuration of the source network node, and after completing the uplink path update, sends a confirmation message of completion of the handover to the target network node, and notifies the completion of the target network node handover.
  • the target network node After receiving the acknowledgement information, the target network node performs handover of the uplink cell of the user, and uses the uplink configuration cell as a new uplink cell of the user. The user can then transfer data through the switched uplink cell.
  • the target network node After the handover is completed, the target network node notifies the management device of the core network of the uplink change, where the management device of the core network may be an MME (Mobility Management Entity), and the MME notifies the serving gateway of the uplink. change.
  • MME Mobility Management Entity
  • the network side needs to maintain multiple S1 port paths for one user, where the S1 port is a network node and a port connected by the MME. It is to be noted that, because the user's uplink cell changes, the network side needs to reconfigure the measurement control information for the user according to the characteristics of the new uplink cell, and the reconfigured measurement control information includes the measurement target and the measurement bandwidth.
  • the user When the user performs the uplink handover, the user needs to access the uplink configuration cell to obtain the uplink resource and the uplink synchronization. At this time, the downlink path of the user is not disconnected from the source network node, so the source cell and the target cell can be obtained through the downlink path.
  • the downlink timing difference is calculated by the downlink timing difference, and the transmission timing is adjusted by the uplink timing difference when the user transmits the access information, and the uplink configuration cell is accessed by using the random access method to establish the user and the The uplink configures the connection of the cell.
  • the user downlink cell handover is switched across the network node.
  • the downlink resource is configured for the user to implement the downlink switching of the user according to the measurement report of the user.
  • the specific method is similar to the method for performing the uplink single direction switching. I will not repeat them here.
  • the downlink handover is different from the uplink handover in the access configuration of the cell.
  • the user When accessing the downlink configuration cell, the user does not need to access the downlink configuration cell in a random access manner, and can directly access the downlink configuration.
  • the target network node needs to notify the core network device, such as the MME, of the downlink change, and the MME also needs to notify the service gateway of the downlink. The change of the road.
  • the service network After the service network has updated the downlink, it needs feedback information to the target network node to confirm that the path update is complete.
  • the resource when the user performs one-way switching in the uplink or the downlink, the resource is configured in one direction, and the uplink and downlink asynchronous switching of the user is implemented, which reduces the number of cells that the user needs to maintain, and reduces the number of users. And the complexity of system maintenance.
  • an embodiment of the present invention provides an apparatus for uplink and downlink asynchronous switching of a user, where the apparatus includes: a receiving module 401, configured to receive a measurement report sent by a user; and a first switching module 402, configured to The measurement report received by the receiving module, when only the uplink cell of the user needs to perform handover in the uplink cell and the downlink cell, the uplink cell of the user is switched; the second switching module 403 is configured to receive according to the receiving module.
  • the measurement report is that when only the downlink cell needs to be handed over in the uplink cell and the downlink cell of the user, the downlink cell of the user is switched.
  • the first switching module 402 includes: a measuring unit, configured to determine, according to the measurement report, an uplink configuration cell of the user; a configuration unit, configured to configure an identifier for the user on the uplink configuration cell, and configure the identifier for the user
  • the first switching module 402 is configured to: determine, by the measurement unit, the uplink configuration cell of the user according to the measurement report, and the updating unit, configured to configure, according to the configuration of the uplink configuration cell of the user, The resource correspondence relationship of the uplink configuration cell is updated.
  • the updating unit includes: a first update subunit, configured to update a correspondence between the uplink configuration cell and the first user identifier when the uplink resource of the user is not configured with an anchor point, where the first The user identifier is an identifier assigned to the user on the uplink configuration cell of the user; the second update subunit is configured to: when the uplink resource of the user is configured as an anchor point, and the uplink configuration cell of the user is an anchor point configuration And the corresponding relationship between the uplink configuration cell and the second user identifier is updated, where the second user identifier is an identifier allocated to the user on the uplink configuration cell of the user. Further, the update unit further includes:
  • the first switching module 402 includes: a connecting unit, configured to establish, according to a configuration of an uplink resource of the user, a connection between the user and the uplink configured cell; and a switching unit, configured to receive an uplink switch sent by the user After the information is completed, the uplink cell of the user is switched to the uplink configuration cell.
  • the connecting unit is specifically configured to acquire a timing difference between the source cell of the user and the uplink configured cell by using a downlink of the user, and indicate that the user adjusts access to the uplink configured cell according to the timing difference. And accessing the uplink configuration cell in a random access manner to establish a connection between the user and the uplink configuration cell.
  • the second switching module 403, the second switching module 403 includes: a measuring unit, configured to determine, according to the measurement report, a downlink configuration cell of the user, and a configuration unit, configured to: The user configures the identifier and configures the downlink radio resource of the user; or the second switching module 403 includes: a measuring unit, configured to determine, according to the measurement report, a downlink configuration cell of the user; and an update unit, configured to: The configuration of the downlink configuration cell of the user updates the resource correspondence relationship of the downlink configuration cell of the user.
  • the updating unit includes: a first update subunit, configured to update a correspondence between the downlink configuration cell and the first user identifier when the downlink resource of the user is not configured with an anchor point, where the first The user identifier is an identifier assigned to the user on the downlink configuration cell of the user; a second update subunit, configured to: when the downlink resource of the user is configured as an anchor, and the downlink configuration cell of the user is a cell configured by the anchor point, update the correspondence between the downlink configuration cell and the second user identifier The second user identifier is an identifier assigned to the user on a downlink configuration cell of the user. Further, the update unit further includes:
  • the second switching module 403 includes: a connecting unit, configured to establish, according to a configuration of a downlink resource of the user, a connection between the user and the downlink configured cell; and a switching unit, configured to receive a downlink switch sent by the user After the information is completed, the downlink cell of the user is switched to the downlink configuration cell.
  • the resource when the user performs one-way switching in the uplink or the downlink, the resource is configured in one direction, and the uplink and downlink asynchronous switching of the user is implemented, which reduces the number of cells that the user needs to maintain, and reduces the number of users. And the complexity of system maintenance.

Abstract

La présente invention, qui appartient au domaine des communications, concerne un procédé et un dispositif pour la commutation non synchronisée des utilisateurs en liaison montante et en liaison descendante. Ce procédé consiste: à recevoir un compte rendu de mesures transmises à partir d'un utilisateur; à commuter la cellule de liaison montante de l'utilisateur conformément au compte rendu de mesures reçu quand, parmi la cellule de liaison montante et la cellule de liaison descendante de l'utilisateur, il n'y a que la cellule de liaison montante qui a besoin d'être commutée; à commuter la cellule de liaison descendante quand, parmi la cellule de liaison montante et la cellule de liaison descendante de l'utilisateur, il n'y a que la cellule de liaison descendante qui a besoin d'être commutée. Le dispositif comporte: un module récepteur, un premier module configurateur, un premier module commutateur, un second module configurateur, et un second module commutateur. Les modes de réalisation de l'invention permettent la commutation non synchronisée de la liaison montante et de la liaison descendante de l'utilisateur grâce à une configuration des ressources dans un seul sens quand l'utilisateur traite la commutation d'un seul sens de la liaison montante ou de la liaison descendante.
PCT/CN2009/075211 2008-12-31 2009-11-30 Procédé et dispositif pour commutation non synchronisée des utilisateurs en liaison montante et en liaison descendante WO2010075717A1 (fr)

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EP09836004A EP2375809A4 (fr) 2008-12-31 2009-11-30 Procédé et dispositif pour commutation non synchronisée des utilisateurs en liaison montante et en liaison descendante

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CN200810189802.6 2008-12-31
CN200810189802A CN101772093A (zh) 2008-12-31 2008-12-31 用户上下行不同步切换的方法和装置

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